The first-principles computation of nuclear magnetic resonance parameters, in particular chemical shift and spin-spin coupling tensors, is reviewed. After a brief nontechnical introduction into the methodology behind such calculations, selected applications from chemistry and biochemistry in solution and the solid state are highlighted. Special attention is called to cases wherein theory can help in structure determination and refinement, as well as in the interpretation of the observables. (C) 2011 John Wiley & Sons, Ltd. WIREs Comput Mol Sci 2011 1 634-647 DOI:10.1002/wcms.63</p
In this tutorial review, we discuss the utilization of chemical shift information as well as ab init...
First-principles calculations of NMR parameters in solids are of crucial importance in chemistry and...
This chapter provides an overview of first-principles computations targeted at NMR properties of tra...
The first-principles computation of nuclear magnetic resonance parameters, in particular chemical sh...
Quantum chemical methods for the calculation of indirect NMR spin–spin coupling constants and chemic...
The basic theory behind NMR spectroscopy is described. The various NMR parameters that can be obtain...
High Resolution NMR: Theory and Chemical Applications focuses on the applications of nuclear magneti...
Every undergraduate chemist performs NMR for structural characterization, but we tend to overlook th...
High Resolution NMR: Theory and Chemical Applications discusses the principles and theory of nuclear...
Work on computational NMR recently carried out at our Laboratory in Padova is reviewed. We summarize...
Nuclear Magnetic resonance and quantum chemistry have been recognized to be strong tools for probing...
Nuclear Magnetic resonance and quantum chemistry have been recognized to be strong tools for probing...
Nuclear Magnetic resonance and quantum chemistry have been recognized to be strong tools for probing...
Nuclear Magnetic resonance and quantum chemistry have been recognized to be strong tools for probing...
This article discusses the existing methods to correlate NMR parameters describing the high resolut...
In this tutorial review, we discuss the utilization of chemical shift information as well as ab init...
First-principles calculations of NMR parameters in solids are of crucial importance in chemistry and...
This chapter provides an overview of first-principles computations targeted at NMR properties of tra...
The first-principles computation of nuclear magnetic resonance parameters, in particular chemical sh...
Quantum chemical methods for the calculation of indirect NMR spin–spin coupling constants and chemic...
The basic theory behind NMR spectroscopy is described. The various NMR parameters that can be obtain...
High Resolution NMR: Theory and Chemical Applications focuses on the applications of nuclear magneti...
Every undergraduate chemist performs NMR for structural characterization, but we tend to overlook th...
High Resolution NMR: Theory and Chemical Applications discusses the principles and theory of nuclear...
Work on computational NMR recently carried out at our Laboratory in Padova is reviewed. We summarize...
Nuclear Magnetic resonance and quantum chemistry have been recognized to be strong tools for probing...
Nuclear Magnetic resonance and quantum chemistry have been recognized to be strong tools for probing...
Nuclear Magnetic resonance and quantum chemistry have been recognized to be strong tools for probing...
Nuclear Magnetic resonance and quantum chemistry have been recognized to be strong tools for probing...
This article discusses the existing methods to correlate NMR parameters describing the high resolut...
In this tutorial review, we discuss the utilization of chemical shift information as well as ab init...
First-principles calculations of NMR parameters in solids are of crucial importance in chemistry and...
This chapter provides an overview of first-principles computations targeted at NMR properties of tra...